The DS1832S+T&R is a cutting-edge microprocessor supervisory circuit designed and manufactured by Maxim Integrated, a renowned leader in the development of innovative analog and mixed-signal products. This device is engineered to monitor the power supply and microprocessor activity of digital systems, ensuring reliable operation and system integrity.
The DS1832S+T&R offers a multitude of features that make it an indispensable component for system designers. It provides a precise monitoring solution with a factory-trimmed reset threshold that ensures accurate detection of under-voltage conditions. The reset signal is maintained for a minimum of 250ms after the supply voltage returns to an acceptable level, offering a robust power-on reset functionality.
This device is particularly suitable for battery-powered systems, thanks to its low power consumption. It draws a minimal quiescent current, which is essential for extending battery life and reducing overall power usage. Additionally, the DS1832S+T&R supports a wide supply voltage range, accommodating various application requirements.
The DS1832S+T&R is also equipped with a manual reset input. This feature allows for an external trigger to initiate a system reset, providing an extra layer of control and security. The manual reset can be activated through a push-button or other user interfaces, offering a convenient way to restart the system without cycling the power.
Packaged in a space-saving 8-pin SOIC, the DS1832S+T&R is provided in tape and reel form, denoted by the T&R suffix, which facilitates efficient handling and placement during automated assembly processes. This packaging is ideal for high-volume production environments.
Maxim Integrated's commitment to quality ensures that the DS1832S+T&R is a reliable choice for critical applications across various industries, including telecommunications, computing, and consumer electronics. By integrating this supervisory circuit into your design, you can achieve enhanced system reliability and performance, safeguarding your products against power instability and processor malfunctions.